Metabolic cost calculations of gait using musculoskeletal energy models, a comparison study.
This paper compares predictions of metabolic energy expenditure in gait using seven metabolic energy expenditure models to assess their correlation with experimental data. Ground reaction forces, marker data, and pulmonary gas exchange data were recorded for six walking trials at combinations of two...
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2019-01-01
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Online Access: | https://doi.org/10.1371/journal.pone.0222037 |
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doaj-dd01056f995c4123b40b70e254d7b4f52021-03-04T12:43:50ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01149e022203710.1371/journal.pone.0222037Metabolic cost calculations of gait using musculoskeletal energy models, a comparison study.Anne D KoelewijnDieter HeinrichAntonie J van den BogertThis paper compares predictions of metabolic energy expenditure in gait using seven metabolic energy expenditure models to assess their correlation with experimental data. Ground reaction forces, marker data, and pulmonary gas exchange data were recorded for six walking trials at combinations of two speeds, 0.8 m/s and 1.3 m/s, and three inclines, -8% (downhill), level, and 8% (uphill). The metabolic cost, calculated with the metabolic energy models was compared to the metabolic cost from the pulmonary gas exchange rates. A repeated measures correlation showed that all models correlated well with experimental data, with correlations of at least 0.9. The model by Bhargava et al. (J Biomech, 2004: 81-88) and the model by Lichtwark and Wilson (J Exp Biol, 2005: 2831-3843) had the highest correlation, 0.95. The model by Margaria (Int Z Angew Physiol Einschl Arbeitsphysiol, 1968: 339-351) predicted the increase in metabolic cost following a change in dynamics best in absolute terms.https://doi.org/10.1371/journal.pone.0222037 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anne D Koelewijn Dieter Heinrich Antonie J van den Bogert |
spellingShingle |
Anne D Koelewijn Dieter Heinrich Antonie J van den Bogert Metabolic cost calculations of gait using musculoskeletal energy models, a comparison study. PLoS ONE |
author_facet |
Anne D Koelewijn Dieter Heinrich Antonie J van den Bogert |
author_sort |
Anne D Koelewijn |
title |
Metabolic cost calculations of gait using musculoskeletal energy models, a comparison study. |
title_short |
Metabolic cost calculations of gait using musculoskeletal energy models, a comparison study. |
title_full |
Metabolic cost calculations of gait using musculoskeletal energy models, a comparison study. |
title_fullStr |
Metabolic cost calculations of gait using musculoskeletal energy models, a comparison study. |
title_full_unstemmed |
Metabolic cost calculations of gait using musculoskeletal energy models, a comparison study. |
title_sort |
metabolic cost calculations of gait using musculoskeletal energy models, a comparison study. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2019-01-01 |
description |
This paper compares predictions of metabolic energy expenditure in gait using seven metabolic energy expenditure models to assess their correlation with experimental data. Ground reaction forces, marker data, and pulmonary gas exchange data were recorded for six walking trials at combinations of two speeds, 0.8 m/s and 1.3 m/s, and three inclines, -8% (downhill), level, and 8% (uphill). The metabolic cost, calculated with the metabolic energy models was compared to the metabolic cost from the pulmonary gas exchange rates. A repeated measures correlation showed that all models correlated well with experimental data, with correlations of at least 0.9. The model by Bhargava et al. (J Biomech, 2004: 81-88) and the model by Lichtwark and Wilson (J Exp Biol, 2005: 2831-3843) had the highest correlation, 0.95. The model by Margaria (Int Z Angew Physiol Einschl Arbeitsphysiol, 1968: 339-351) predicted the increase in metabolic cost following a change in dynamics best in absolute terms. |
url |
https://doi.org/10.1371/journal.pone.0222037 |
work_keys_str_mv |
AT annedkoelewijn metaboliccostcalculationsofgaitusingmusculoskeletalenergymodelsacomparisonstudy AT dieterheinrich metaboliccostcalculationsofgaitusingmusculoskeletalenergymodelsacomparisonstudy AT antoniejvandenbogert metaboliccostcalculationsofgaitusingmusculoskeletalenergymodelsacomparisonstudy |
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1714801841281171456 |